The present invention relates to non-corrosive, non-metallic sill plates, or conduit boxes, covering external building electrical wiring.
Conduit boxes are used to attach electrical conduit to an exterior or interior surface of a building and to seal the wall penetrations while permitting access to the wiring.
These traditional conduit boxes are typically cast of aluminum or aluminum alloy. Such metals used will corrode from water exposure and have only limited impact resistance, with a tendency to crack. Being conductive, acid rain will react to accelerate corrosion of either the aluminum or the metallic fasteners used for attachment due to differences in contact potential.
In addition, rusting fastener screws accelerate oxidation and the rusting of aluminum or other metals.
Moreover, the joints between metal sill plates and plastic pipes joining to the metal conduit boxes are usually not in a water tight joint, since the materials don't fit together well.
It is therefore an object of the present invention to provide a weatherproof non-corrosive conduit box.
It is also an object of the present invention to provide a fire resistant and resilient conduit box.
It is another object of the present invention to provide a conduit box which is ultraviolet (UV) resistant and has high tensile strength for good impact resistance.
Other objects will become apparent from the following description of the present invention.
In keeping with these objects and others, which may become apparent, the present invention is a non corrosive, non-metallic conduit box cover for covering wiring at the end of a plastic pipe (such as a PVC pipe) used as a sleeve.
The present invention is therefore a weatherproof non corrosive, non-metallic conduit box molded preferably of a sturdy plastic material, such as, for example, polyvinyl chloride (PVC), such as sold under the tradename of PVC 1900, which is a fire resistant and resilient material. While inexpensive, this material is ultraviolet (UV) resistant and has high tensile strength for good impact resistance. This is an improvement over prior art aluminum or aluminum alloy conduit boxes which corrode from water exposure and have only limited impact resistance, with a tendency to crack. The polyvinyl chloride pipes also resist acid rain, which reacts to accelerate corrosion of either the aluminum or the metallic fasteners used for attachment due to differences in contact potential. Being non-conductive, PVC avoids such problems.
Several embodiments of non-corrosive, non-metallic conduit boxes are included in this invention. The first, for most typical applications, has preferably two mounting holes and uses a separate base gasket. The second embodiment, for heavy-duty use with large diameter conduit, has four mounting holes on its flange portion.
Other embodiments include non-corrosive, non-metallic electrical box covers mounted to building siding on an exterior of a building.
The present invention can best be understood in connection with the accompanying drawings. It is noted that the invention is not limited to the precise embodiments shown in drawings, in which:
This can best be seen in the rear view of
A second embodiment of this invention is conduit box 15 shown in the front elevational view of
The embodiment shown in
This can best be seen in the rear view of
In the foregoing description, certain terms and visual depictions are used to illustrate the preferred embodiment. However, no unnecessary limitations are to be construed by the terms used or illustrations depicted, beyond what is shown in the prior art, since the terms and illustrations are exemplary only, and are not meant to limit the scope of the present invention.
It is further known that other modifications may be made to the present invention, without departing the scope of the invention.
This application claims benefit under 35 USC 119(e) from provisional application No. 60/476,542, filed Jun. 6, 2003.
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| Number | Date | Country | |
|---|---|---|---|
| 20040245767 A1 | Dec 2004 | US |
| Number | Date | Country | |
|---|---|---|---|
| 60476542 | Jun 2003 | US |